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Optimal control of PEVs for energy cost minimization and frequency regulation in the smart grid accounting for battery state-of-health degradation

机译:PEV的最佳控制,可在智能电网中实现能源成本最小化和频率调节,从而解决电池健康状况恶化的问题

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Plug-in electric vehicles (PEVs) are considered the key to reducing the fossil fuel consumption and an important part of the smart grid. The plug-in electric vehicle-to-grid (V2G) technology in the smart grid infrastructure enables energy flow from PEV batteries to the power grid so that the grid stability is enhanced and the peak power demand is shaped. PEV owners will also benefit from V2G technology as they will be able to reduce energy cost through proper PEV charging and discharging scheduling. Moreover, power regulation service (RS) reserves have been playing an increasingly important role in modern power markets. It has been shown that by providing RS reserves, the power grid achieves a better match between energy supply and demand in presence of volatile and intermittent renewable energy generation. This paper addresses the problem of PEV charging under dynamic energy pricing, properly taking into account the degradation of battery state-of-health (SoH) during V2G operations as well as RS provisioning. An overall optimization throughout the whole parking period is proposed for the PEV and an adaptive control framework is presented to dynamically update the optimal charging/discharging decision at each time slot to mitigate the effect of RS tracking error. Experimental results show that the proposed optimal PEV charging algorithm minimizes the combination of electricity cost and battery aging cost in the RS provisioning power market.
机译:插电式电动汽车(PEV)被认为是减少化石燃料消耗的关键,也是智能电网的重要组成部分。智能电网基础设施中的插入式电动车到电网(V2G)技术使能量从PEV电池流向电网,从而提高了电网的稳定性并确定了峰值功率需求。 PEV所有者还将受益于V2G技术,因为他们将能够通过适当的PEV充电和放电调度来降低能源成本。此外,功率调节服务(RS)储备在现代电力市场中起着越来越重要的作用。已经表明,通过提供RS储备,在存在不稳定和间歇性可再生能源发电的情况下,电网可以实现能源供需之间的更好匹配。本文解决了动态能源定价下的PEV充电问题,并适当考虑了V2G运营和RS供应期间电池健康状态(SoH)的下降。提出了在整个停车期间针对PEV进行的总体优化,并提出了一种自适应控制框架来动态更新每个时隙的最佳充电/放电决策,以减轻RS跟踪误差的影响。实验结果表明,所提出的最优PEV充电算法可以最大程度地降低RS供应电力市场中的电力成本和电池老化成本。

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